A Novel Acellular Dermal Scaffold Prepared Using High-Intensity Focused Ultrasound Energy for the Repair of Soft Tissue Defects

Mohamed M. Abdul-Monem, M. Helal, Moustafa N. Aboushelib
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Abstract

Abstract Objective To evaluate a naturally derived acellular dermal scaffold for soft tissue reconstruction using high-intensity focused ultrasound energy (HIFU). Materials and Methods Acellular dermal scaffolds (ADSs) were prepared by purification of bovine skin. Half of the scaffolds were subjected to high-intensity focused ultrasound energy (HIFU) to modify collagen structure, whereas the other half was used as control. A large skin defect was made in the dorsum of white mice, and the scaffolds were used to cover the induced defects. Wound healing was evaluated histologically after 2, 6, and 12 weeks using common and specific stained sections (n = 20). Statistical Analysis Mean values and standard deviations were calculated for each group, and Student’s t-test was used for statistical analysis (α= 0.05; n = 20). Results After 2 weeks, all examined specimens revealed the presence of inflammatory cellular infiltration and early immature blood vessel formation. After 6 weeks, inflammatory cellular infiltration was reduced, with evidence of maturation of new blood vessels observed for all groups. After 12 weeks, there was a significant increase (F = 124, p < 0.01) in new collagen formation and count of mature blood vessels observed for the HIFU group compared with control. Evidence of remodeling of new collagen fibers and biodegradation of the grafts was also observed. Conclusions HIFU-modified ADSs enhanced wound healing and could be used to cover large soft tissue defects.
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利用高强度聚焦超声能量制备脱细胞真皮支架修复软组织缺损
目的探讨一种天然脱细胞真皮支架用于高强度聚焦超声能量(HIFU)软组织重建。材料与方法纯化牛皮肤制备脱细胞真皮支架(ADSs)。一半的支架接受高强度聚焦超声能量(HIFU)来修饰胶原蛋白结构,另一半作为对照。在小白鼠背部制造大面积皮肤缺损,用支架覆盖诱导缺损。在2周、6周和12周后使用普通和特定染色切片(n = 20)对伤口愈合进行组织学评估。计算各组的均值和标准差,采用Student 's t检验进行统计学分析(α= 0.05;N = 20)。结果2周后,所有标本均可见炎性细胞浸润和早期未成熟血管形成。6周后,各组炎症细胞浸润减少,新血管成熟。12周后,与对照组相比,HIFU组新胶原形成和成熟血管数量显著增加(F = 124, p < 0.01)。新胶原纤维的重塑和移植物的生物降解的证据也被观察到。结论hifu改良的ADSs能促进创面愈合,可用于大面积软组织缺损的修复。
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